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    <managingEditor>tris-trb@nas.edu (Bill McLeod)</managingEditor>
    <webMaster>tris-trb@nas.edu (Bill McLeod)</webMaster>
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      <title>TRANSLATED TITLE: DEVICES FOR THE DIAGNOSIS OF TRANSFER PROCESSES IN MAGNETORHEOLOGICAL SUSPENSIONS</title>
      <link>https://trid.trb.org/View/302577</link>
      <description><![CDATA[No Abstract.]]></description>
      <pubDate>Sun, 31 Dec 1989 00:00:00 GMT</pubDate>
      <guid>https://trid.trb.org/View/302577</guid>
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      <title>TRANSLATED TITLE: HEAT AND MASS TRANSFER IN MAGNETORHEOLOGICAL SUSPENSIONS</title>
      <link>https://trid.trb.org/View/302579</link>
      <description><![CDATA[No Abstract.]]></description>
      <pubDate>Sun, 31 Dec 1989 00:00:00 GMT</pubDate>
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    <item>
      <title>EXPERIMENTAL STUDY OF MOISTURE TRANSFER IN BULK COAL SUBJECT TO FREEZING</title>
      <link>https://trid.trb.org/View/141361</link>
      <description><![CDATA[The moist bulky materials, such as coal, pose problems in materials handling (unloading after exposure to low temperatures) in cold weather regions.  A relationship between the diffusion coefficients and the specific water content in the coal was established, and "safe" moisture values (at which the coal does not freeze) for a Yakutian coal were obtained.  The results are applicable to other coals.]]></description>
      <pubDate>Fri, 07 Nov 1980 00:00:00 GMT</pubDate>
      <guid>https://trid.trb.org/View/141361</guid>
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      <title>STUDY OF THE EFFECT OF POLYMERIC ADDITIVES ON THE HYDRODYNAMICS AND HEAT TRANSFER OF TURBULENT FLOWS</title>
      <link>https://trid.trb.org/View/18582</link>
      <description><![CDATA[Experiments are described for gaining a deeper insight into the results and mechanism of adding polymeric materials for reducing fluid friction and the heat transfer rate.  It was found that increasing the concentration of additives reduces these two quantities up to some maximum and then the trend is reversed.  It was determined that this effect also prevails in fluids other than water.  The results of experiments do not contradict the hypothesis put forward earlier by others on the mechanism of friction reduction by adding polymers.  It seems acceptable to attribute this reduction to diminution of transverse flow fluctuations.]]></description>
      <pubDate>Mon, 25 Mar 1974 00:00:00 GMT</pubDate>
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      <title>STRUCTURE OF TURBULENT TRANSFER AT A WALL</title>
      <link>https://trid.trb.org/View/18588</link>
      <description><![CDATA[A detailed picture of the flow and exchange is prerequisite to a description of turbulent transfer.  Experimental and theoretical studies have revealed specific details of the turbulent flow near a rigid wall.  The energy balance of the fluctuating motion has been set up, the local nature of the small vortex structures exists on the mechanisms of the transfer of a scalar substance.  This paper deals with certain details of this latter question, namely, with large-scale transfer.  Results are discussed in detail.]]></description>
      <pubDate>Mon, 25 Mar 1974 00:00:00 GMT</pubDate>
      <guid>https://trid.trb.org/View/18588</guid>
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      <title>INVESTIGATION OF HEAT TRANSFER ON A ROUGH PLATE</title>
      <link>https://trid.trb.org/View/13611</link>
      <description><![CDATA[This investigation was designed to obtain and analyze data on heat transfer to a rough plate both under the conditions of a completely rough surface and under transitional conditions.  The experimental investigations were carried out on plates with closely-spaced two-dimensional geometrically similar roughness elements of heights 0.2, 2 and 10 mm.  For comparison, control experiments with smooth plates were used.  In addition, local heat transfer on the surface of the projections and the nature of the eddies between the roughness elements were investigated on the plate with the roughness elements of height 10 mm.  The results of the investigations of the heat fluxes on rough plates show that as the velocity of the external strain is increased there is a gradual intensification of heat transfer from the level corresponding to the smooth plate to some new stable level.  This type of change in the heat transfer intensity can be explained by the gradual development of vortex motion between the roughness elements.]]></description>
      <pubDate>Thu, 24 Jan 1974 00:00:00 GMT</pubDate>
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